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A Monte Carlo simulation of scattering reduction in spectral X-ray computed tomography

机译:光谱X射线计算机断层扫描散射减少的蒙特卡罗模拟

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In X-ray computed tomography (CT), scattered radiation plays an important role in the accurate reconstruction of the inspected object, leading to a loss of contrast between the different materials in the reconstruction volume and cupping artifacts in the images. We present a Monte Carlo simulation tool for spectral X-ray CT to predict the scattered radiation generated by complex samples. An experimental setup is presented to isolate the energy distribution of scattered radiation. Spectral CT is a novel technique implementing photon-counting detectors able to discriminate the energy of incoming photons, enabling spectral analysis of X-ray images. This technique is useful to extract efficiently more information on energy dependent quantities (e.g. mass attenuations coefficients) and study matter interactions (e.g. X-ray scattering, photoelectric absorption, etc...). Having a good knowledge of the spectral distribution of the scattered X-rays is fundamental to establish methods attempting to correct for it. The simulations are validated by real measurements using a CdTe spectral resolving detector (Multix ME-100). We observed the effect of the scattered radiation on the image reconstruction, becoming relevant in the energy range where the Compton events are dominant (i.e. above 50keV).
机译:在X射线计算机断层扫描(CT)中,散射辐射在被检查对象的准确重建中起重要作用,导致在图像中的重建体积和拔罐伪像之间的不同材料之间的对比度丧失。我们提出了一种用于光谱X射线CT的蒙特卡罗模拟工具,以预测复杂样品产生的散射辐射。提出了一种实验设置以隔离散射辐射的能量分布。光谱CT是实现能够区分输入光子的能量的光子计数检测器的新技术,使X射线图像的光谱分析。该技术可用于有效地提取有关能量依赖量(例如质量衰减系数)和研究物质相互作用的有效信息(例如X射线散射,光电吸收等)。良好地了解散射X射线的光谱分布是建立试图纠正的方法的基础。使用CDTE谱分辨检测器(Multix Me-100)通过实际测量验证模拟。我们观察到散射辐射对图像重建的影响,在康普顿事件优势的能量范围内变得相关(即50keV)。

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